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第10期 张荣良等:纳米氧化锌真空控氧法的制备及杂质元素的行为 ·1269· (马正先,韩跃新,郑龙熙,等.纳米氧化锌的应用研究.化工 [8]Ding D L,Liu J X,Han Y X.Zinc powders preparation by alka- 进展,2002,21(1):60) line electrowinning from hot galvanizing slag.Nonferrous Met, 2]Lii H J,Jiang P,Liu Y S,et al.Preparation and photocatalytic 2007,59(2):43 degradation properties of ZnO nanopowders with different morphol- (丁德玲,刘家祥,韩跃新.热镀锌渣碱性电解法制备锌粉.有 ogies.J Funct Mater,2010,41(2)292 色金属,2007,59(2):43) (吕红金,江萍,刘宇珊,等.不同形貌纳米Z0的合成及其 9] Wu Z Y,Fang Z,Xu H Y,et al.Property of optical absorption 光催化性能研究.功能材料,2010,41(2):292) and bacterial inhibition of nano ZnO prepared by thermo-plating B]Wu LL,Zou K,Zhao J B,et al.Controllable morphologies of hard Zn with Fe.Mater Rev,2009,23(8):54 Zn0 nanocrystals and the photoluminescence property.Synth (吴振玉,方正,徐洪耀,等.热镀铁锌渣制纳米Z0的光学吸 Crs,2009,38(3):689 收及抑菌性能.材料导报,2009,23(8):54) (吴莉莉,邹科,赵金博,等.纳米Z0的形态控制及其发光 [10]Yuan X H,He M Y,Wang S M,et al.Formation cause and re- 性能.人工品体学报,2009,38(3):689) covering technology of hot galvanizing dross.Yunnan Metall, 4]Dierstein A,Natter H,Mever F,et al.Electrochemical deposition 2007,36(1):32 under oxidizing conditions:a new synthesis for nanocrystalline (袁训华,何明奕,王胜民,等.热镀锌渣的形成原因及回收 metal oxides.Scripta Mater.2001,44(8/9):2209 工艺.云南治金,2007,36(1):32) [5]Xu B Q,Yang B,Liu D C,et al.The study on recovering metal [11]Dvorak P,Jandova J.Hydrometallurgical recovery of zine from zinc from the hot galvanizing slag by vacuum distillation.Non Fer- hot dip galvanizing ash.Hydrometallurgy,2005,77(1/2):29 rous Min Metall,2007,23(4):53 [12]Stocks C,Wood J,Guy S.Minimisation and recycling of spent (徐宝强,杨斌,刘大春,等.真空蒸馏法处理热镀锌渣回收金 acid wastes from galvanizing plants.Resour Conserr Recycl, 属锌的研究.有色矿治,2007,23(4):53) 2005,44(2):153 [6]Ren Y S,Li Y Q,Feng C B.The study on recovering metal zine [13]Zheng H J,Gu Z H,Zheng Y P.Electrorefining zine dross in from the hot galvanizing slag by vacuum distillation.Baosteel Tech- ammoniacal ammonium chloride system.Hydrometallurgy,2008, nod,2003(1):60 90(1):8 (任玉森,李永谦,冯长宝.热镀锌废锌渣两步法回收工艺研 [14]Dai Y N.Nonferrous Metal Metallurgy and Vacuum Metallurgy. 究.宝钢技术,2003(1):60) Beijing:Metallurgical Industry Press,2009 Gu Z H,Zheng H J.Investigation progress on hydrometallurgical (戴永年.有色治金及真空治金.北京:治金工业出版社, recovery of zinc from industrial wastes.Hydrometall China,2007, 2009) 26(2):67 [15]Dai Y N,Zhao Z.Vacuum Metallurgy.Beijing:Metallurgical (顾正海,郑华均.从工业废渣中湿法回收锌的研究进展.湿 Industry Press,1988 法治金,2007,26(2):67) (戴永年,赵忠.真空治金.北京:治金工业出版社,1988)第 10 期 张荣良等: 纳米氧化锌真空控氧法的制备及杂质元素的行为 ( 马正先,韩跃新,郑龙熙,等. 纳米氧化锌的应用研究. 化工 进展,2002,21( 1) : 60) [2] Lü H J,Jiang P,Liu Y S,et al. Preparation and photocatalytic degradation properties of ZnO nanopowders with different morphol￾ogies. J Funct Mater,2010,41( 2) : 292 ( 吕红金,江萍,刘宇珊,等. 不同形貌纳米 ZnO 的合成及其 光催化性能研究. 功能材料,2010,41 ( 2) : 292) [3] Wu L L,Zou K,Zhao J B,et al. Controllable morphologies of ZnO nanocrystals and the photoluminescence property. J Synth Cryst,2009,38( 3) : 689 ( 吴莉莉,邹科,赵金博,等. 纳米 ZnO 的形态控制及其发光 性能. 人工晶体学报,2009,38( 3) : 689 ) [4] Dierstein A,Natter H,Meyer F,et al. Electrochemical deposition under oxidizing conditions: a new synthesis for nanocrystalline metal oxides. Scripta Mater,2001,44( 8 /9) : 2209 [5] Xu B Q,Yang B,Liu D C,et al. The study on recovering metal zinc from the hot galvanizing slag by vacuum distillation. Non Fer￾rous Min Metall,2007,23( 4) : 53 ( 徐宝强,杨斌,刘大春,等. 真空蒸馏法处理热镀锌渣回收金 属锌的研究. 有色矿冶,2007,23( 4) : 53 ) [6] Ren Y S,Li Y Q,Feng C B. The study on recovering metal zinc from the hot galvanizing slag by vacuum distillation. Baosteel Tech￾nol,2003( 1) : 60 ( 任玉森,李永谦,冯长宝. 热镀锌废锌渣两步法回收工艺研 究. 宝钢技术,2003( 1) : 60) [7] Gu Z H,Zheng H J. Investigation progress on hydrometallurgical recovery of zinc from industrial wastes. Hydrometall China,2007, 26( 2) : 67 ( 顾正海,郑华均. 从工业废渣中湿法回收锌的研究进展. 湿 法冶金,2007,26( 2) : 67) [8] Ding D L,Liu J X,Han Y X. Zinc powders preparation by alka￾line electrowinning from hot galvanizing slag. Nonferrous Met, 2007,59( 2) : 43 ( 丁德玲,刘家祥,韩跃新. 热镀锌渣碱性电解法制备锌粉. 有 色金属,2007,59( 2) : 43) [9] Wu Z Y,Fang Z,Xu H Y,et al. Property of optical absorption and bacterial inhibition of nano ZnO prepared by thermo-plating hard Zn with Fe. Mater Rev,2009,23( 8) : 54 ( 吴振玉,方正,徐洪耀,等. 热镀铁锌渣制纳米 ZnO 的光学吸 收及抑菌性能. 材料导报,2009,23( 8) : 54) [10] Yuan X H,He M Y,Wang S M,et al. Formation cause and re￾covering technology of hot galvanizing dross. Yunnan Metall, 2007,36( 1) : 32 ( 袁训华,何明奕,王胜民,等. 热镀锌渣的形成原因及回收 工艺. 云南冶金,2007,36( 1) : 32) [11] Dvoˇ rák P,Jandová J. Hydrometallurgical recovery of zinc from hot dip galvanizing ash. Hydrometallurgy,2005,77( 1 /2) : 29 [12] Stocks C,Wood J,Guy S. Minimisation and recycling of spent acid wastes from galvanizing plants. Resour Conserv Recycl, 2005,44( 2) : 153 [13] Zheng H J,Gu Z H,Zheng Y P. Electrorefining zinc dross in ammoniacal ammonium chloride system. Hydrometallurgy,2008, 90( 1) : 8 [14] Dai Y N. Non-ferrous Metal Metallurgy and Vacuum Metallurgy. Beijing: Metallurgical Industry Press,2009 ( 戴永年. 有色冶金及真空冶金. 北京: 冶金工业出版社, 2009) [15] Dai Y N,Zhao Z. Vacuum Metallurgy. Beijing: Metallurgical Industry Press,1988 ( 戴永年,赵忠. 真空冶金. 北京: 冶金工业出版社,1988) ·1269·
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